300的性能分析 使用历史天气数据的GHz回程链路

IF 0.6 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
Bo Kum Jung, T. Kürner
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引用次数: 3

摘要

摘要根据最近发布的IEEE标准802.15.3d(2017),工作在300 GHz的太赫兹链路可以实现超过100 Gbit / s−1的数据速率。该功能可以支持从地下光纤连接到无线的未来回程连接的过渡,在这种情况下,光纤链路不可用或安装成本太高。欧盟-日本“地平线2020”项目“雷神”正致力于展示这种联系。对天气条件影响的详细调查将有助于为即将到来的应用制定300 GHz回程链路的规划指南。本文采用射线追踪模拟的方法研究太赫兹链路与一般天气的相关性。模拟结合了大气衰减的ITU-R传播模型(空气中的水蒸气和氧气含量、雨滴、云或雾的液体含量)、天线杆的随风摇摆模型以及ThoR项目中考虑的部署场景的历史测量气候数据。因此,本研究将展示在一般天气条件下太赫兹链路在室外应用中的可行性,定义与天气相关的中断概率,并允许我们得出频率为300 GHz的太赫兹链路的规划指南。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Performance analysis of 300 GHz backhaul links using historic weather data
Abstract. According to the recently published IEEE standard 802.15.3d (2017), THz links operating at 300 GHz are viable to achieve more than 100 Gbit s−1 of data rate. This feature can support a transition of the future backhaul connectivity from the underground fibre connection to the wireless, where fibre links are not available or too costly to install. The EU-Japan Horizon 2020 project “ThoR” is working towards the demonstration of such links. A detailed investigation on the influence of weather conditions will help to derive planning guidelines of 300 GHz backhaul links for forthcoming applications. This paper focuses on the dependency of the THz link on the general weather by using ray-tracing simulation. Simulation is conducted combining ITU-R propagation models for atmospheric attenuation (water vapour and oxygen content of air, droplets of rains, liquid content of clouds or fog), a wind-depending swaying model for the antenna poles, and historical measured climate data for the deployment scenarios considered in the ThoR project. As a result, this research will show the feasibility of THz link in outdoor applications under general weather conditions, defines weather-dependent outage probabilities, and allows us to derive planning guidelines of THz links at a frequency of 300 GHz.
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来源期刊
Advances in Radio Science
Advances in Radio Science ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
0.90
自引率
0.00%
发文量
3
审稿时长
45 weeks
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